CN217809057U - Titanium white powder is subsides device for waste water - Google Patents

Titanium white powder is subsides device for waste water Download PDF

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Publication number
CN217809057U
CN217809057U CN202222184413.2U CN202222184413U CN217809057U CN 217809057 U CN217809057 U CN 217809057U CN 202222184413 U CN202222184413 U CN 202222184413U CN 217809057 U CN217809057 U CN 217809057U
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China
Prior art keywords
reaction box
fan blade
stirring fan
waste water
churn
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CN202222184413.2U
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Chinese (zh)
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赵蓬勃
马文
曲以臣
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SHANDONG DAWN TITANIUM INDUSTRY CO LTD
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SHANDONG DAWN TITANIUM INDUSTRY CO LTD
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Abstract

The utility model relates to a titanium white powder waste water is with subsiding device belongs to waste water treatment technical field, including reaction box, rabbling mechanism, supporting leg and the pipeline that is used for transmitting waste water and precipitate, the rabbling mechanism includes motor, driving gear, bearing and safety cover, bearing embedding safety cover roof sets up, bearing inner circle fixedly connected with churn, the one end that the bearing was kept away from to the churn runs through the reaction box roof and extends to in the reaction box, churn outer lane equidistance evenly is provided with a plurality of stirring fan blades, stirring fan blade has seted up the inner chamber, stirring fan blade's inner chamber link up with the inner chamber of churn, stirring fan blade outer lane is seted up a plurality of relief holes that link up with the stirring fan blade inner chamber. Through setting up the stirring fan blade that has the relief hole, let the flocculating agent through stirring and the more abundant mixture of waste water, avoid mixing inhomogeneous influence waste water treatment result.

Description

Titanium white powder is subsides device for waste water
Technical Field
The utility model belongs to the technical field of the waste water treatment technique and specifically relates to a titanium white powder waste water is with subsiding device is related to.
Background
Titanium dioxide is an important inorganic chemical pigment, and the main component is titanium dioxide. The titanium dioxide is mainly used in the industries of paint, printing ink, paper making, plastic rubber, chemical fiber, ceramic and the like and has important application. Titanium white powder can produce waste water in process of production, need use relevant effluent treatment plant when handling waste water.
Titanium white powder waste water is when handling waste water with settling device, need add the flocculating agent, then stir and make both misce benes, and current waste water is with settling device stirring thoroughly, makes both misce benes, leads to settling effect not good, and the wastewater treatment rate is not high.
SUMMERY OF THE UTILITY MODEL
The utility model aims at the problem among the above-mentioned prior art, provide a titanium white powder waste water is with subsiding device, can realize through following technical scheme:
a titanium white powder is subsided device for waste water, including reaction box, rabbling mechanism, supporting leg and pipeline used for transmitting waste water and precipitate, the said supporting leg has multiple and uniform fixed connection to the bottom of reaction box, the inboard intermediate position of said reaction box has cylindrical filter screens vertically, the diameter of the said filter screen is smaller than the diameter of the reaction box, said filter screen top and bottom are fixedly connected with inside wall of reaction box;
rabbling mechanism includes motor, driving gear, bearing and safety cover, safety cover fixed connection is at the reaction box top, motor fixed mounting is in the safety cover bottom, motor output shaft runs through the safety cover setting, driving gear fixed connection is at the output of motor, bearing embedding safety cover roof sets up, bearing inner circle fixedly connected with churn, the one end that the bearing was kept away from to the churn runs through the reaction box roof and extends to in the reaction box, is located churn outer lane fixedly connected with driven gear in the safety cover, driven gear and driving gear meshing, churn outer lane equidistance evenly is provided with a plurality of stirring fan blades, stirring fan blade has seted up the inner chamber, stirring fan blade's inner chamber link up with the inner chamber of churn, stirring fan blade outer lane is seted up a plurality of relief holes that link up with the stirring fan blade inner chamber.
The utility model discloses further set up to: the pipeline includes inlet tube, drain pipe and blow off pipe, the inlet tube sets up at the reaction box top, the inlet tube runs through the reaction box lateral wall and filter screen setting, the drain pipe sets up in the reaction box bottom and runs through the reaction box lateral wall setting, the blow off pipe sets up the one side of keeping away from the drain pipe at the reaction box, the blow off pipe runs through reaction box lateral wall and filter screen setting, all be provided with the water pump on drain pipe and the blow off pipe.
The utility model discloses further set up to: the reaction box diapire edge sets up towards ground slope, filter screen bottom fixed connection is in the not edge of slope of reaction box diapire.
The utility model discloses further set up to: the bottom of the supporting leg is fixedly connected with an anti-slip pad. The bottom of the supporting leg is fixedly connected with an anti-slip pad.
The utility model discloses further set up to: one side fixedly connected with storage case that the safety cover was kept away from at the reaction tank top, the storage tank top is run through and is provided with the filling tube, the one end that the storage case was kept away from to the filling tube is hung and is established at the churn top, be provided with the charge pump on the filling tube, the one side that the filling tube was kept away from at the storage tank top has seted up the charge door.
To sum up, the beneficial technical effects of the utility model are that:
the flocculating agent passes through the mixing drum and the mixing fan blades and is finally discharged through discharge holes in the mixing fan blades with different heights, so that the flocculating agent is fully mixed with the wastewater, and the influence on the sedimentation effect due to uneven mixing is avoided, thereby influencing the wastewater treatment rate; the settled water flows down through the slope through the inclined bottom wall of the reaction box, so that residual liquid is prevented from remaining in the reaction box; the anti-slip mat prevents the device from inclining or falling during operation.
Drawings
Fig. 1 is a schematic structural view for showing the whole of the present invention.
Reference numerals: 1. a reaction box; 2. a stirring mechanism; 201. a motor; 202. a driving gear; 203. a bearing; 204. a protective cover; 205. a mixing drum; 206. a stirring fan blade; 207. a discharge hole; 208. a driven gear; 3. supporting legs; 301. a non-slip mat; 4. a pipeline; 401. a water inlet pipe; 402. a drain pipe; 403. a blow-off pipe; 5. a filter screen; 6. a material storage box; 601. a feed tube; 602. a charging pump.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Examples
As shown in fig. 1, the utility model discloses a titanium dioxide powder sedimentation device for wastewater, which comprises a reaction box 1, an agitating mechanism 2, supporting legs 3 and a pipeline 4 for transmitting wastewater and sediments, wherein the supporting legs 3 are provided with a plurality of uniform and fixed connections at the bottom of the reaction box 1, a cylindrical filter screen 5 is vertically arranged at the middle position inside the reaction box 1, the diameter of the filter screen 5 is smaller than that of the reaction box 1, and the top and the bottom of the filter screen 5 are both fixedly connected with the inner side wall of the reaction box 1;
rabbling mechanism 2 includes motor 201, driving gear 202, bearing 203 and safety cover 204, safety cover 204 fixed connection is at 1 top of reaction box, motor 201 fixed mounting is in safety cover 204 bottom, motor 201 output shaft runs through the setting of safety cover 204, driving gear 202 fixed connection is at the output of motor 201, bearing 203 embedding safety cover 204 roof sets up, bearing 203 inner circle fixedly connected with churn 205, the one end that bearing 203 was kept away from to churn 205 runs through 1 roof of reaction box and extends to in the reaction box 1, is located churn 205 outer lane fixedly connected with driven gear 208 in the safety cover 204, driven gear 208 and driving gear 202 meshing, churn 205 outer lane equidistance evenly is provided with a plurality of stirring fan blades 206, stirring fan blade 206 has seted up the inner chamber, stirring fan blade 206's inner chamber has been link up with stirring barrel 205's inner chamber, stirring fan blade 206 outer lane sets up a plurality of relief holes 207 that link up with stirring fan blade 206 inner chamber.
Specifically, pipeline 4 includes inlet tube 401, drain pipe 402 and blow off pipe 403, inlet tube 401 sets up at 1 top of reaction box, inlet tube 401 runs through 1 lateral wall of reaction box and the setting of filter screen 5, drain pipe 402 sets up in 1 bottom of reaction box and runs through 1 lateral wall of reaction box and set up, blow off pipe 403 sets up the one side of keeping away from drain pipe 402 at reaction box 1, blow off pipe 403 runs through 1 lateral wall of reaction box and the setting of filter screen 5, all be provided with water pump 404 on drain pipe 402 and the blow off pipe 403.
Specifically, the edge of the bottom wall of the reaction box 1 inclines towards the ground, and the bottom of the filter screen 5 is fixedly connected to the edge of the bottom wall of the reaction box 1, which is not inclined.
Specifically, the bottom of the supporting leg 3 is fixedly connected with a non-slip mat 301.
Specifically, one side fixedly connected with storage case 6 of safety cover 204 is kept away from at 1 top of reaction box, 6 tops of storage cases run through and are provided with filling tube 601, the one end that storage case 6 was kept away from to filling tube 601 is hung and is established at churn 205 top, be provided with charge pump 602 on the filling tube 601, the charge door has been seted up to one side that filling tube 601 was kept away from at 6 tops of storage cases.
Specific implementation of this example: titanium white powder waste water is through inlet tube 401 entering reaction box 1 in, open motor 201 electric drive gear and rotate 202, thereby driving gear 202 drives driven gear 208 and rotates and drive churn 205 and rotate, the flocculating agent gets into churn 205 through filling tube 601 under the effect of charge pump 602 in, again through stirring fan blade 206, arrange to reaction box 1 in discharge hole 207 at last, waste water is under the effect of filter screen 5 and flocculating agent, the precipitate is stayed in the filter screen 5 of tube-shape, water discharges through drain pipe 402, the precipitate is discharged through blow off pipe 403.

Claims (5)

1. A titanium white powder is subside device for waste water, includes reaction box (1), rabbling mechanism (2), supporting leg (3) and is used for transmitting pipeline (4) of waste water and precipitate, characterized by that, supporting leg (3) are provided with a plurality of and even fixed connection in reaction box (1) bottom, the inboard intermediate position of reaction box (1) vertically is provided with cylindric filter screen (5), the diameter of filter screen (5) is less than the diameter of reaction box (1), filter screen (5) top and bottom all with reaction box (1) inside wall fixed connection;
rabbling mechanism (2) are including motor (201), driving gear (202), bearing (203) and safety cover (204), safety cover (204) fixed connection is at reaction box (1) top, motor (201) fixed mounting is in safety cover (204) bottom, motor (201) output shaft runs through safety cover (204) setting, driving gear (202) fixed connection is at the output of motor (201), bearing (203) embedding safety cover (204) roof sets up, bearing (203) inner circle fixedly connected with churn (205), the one end that bearing (203) were kept away from to churn (205) runs through reaction box (1) roof and extends to in reaction box (1), is located churn (205) outer lane fixedly connected with driven gear (208) in safety cover (204), driven gear (208) and driving gear (202) meshing, churn (205) outer lane evenly is provided with a plurality of stirring fan blade (206) equidistance, the inner chamber has been seted up in stirring fan blade (206), the inner chamber has been link up with the inner chamber of stirring fan blade (205) and has been link up with the inner chamber of stirring fan blade (206), stirring fan blade (206) inner chamber (206) and the discharge hole (207) of stirring fan blade (206) have been link up in a plurality of stirring outer lane.
2. The titanium white powder is sedimentation device for waste water according to claim 1, wherein pipeline (4) includes inlet tube (401), drain pipe (402) and blow off pipe (403), inlet tube (401) sets up at reaction box (1) top, inlet tube (401) run through reaction box (1) lateral wall and filter screen (5) setting, drain pipe (402) set up in reaction box (1) bottom and run through reaction box (1) lateral wall setting, blow off pipe (403) set up in one side of keeping away from drain pipe (402) in reaction box (1), blow off pipe (403) run through reaction box (1) lateral wall and filter screen (5) setting, all be provided with water pump (404) on drain pipe (402) and blow off pipe (403).
3. The titanium dioxide wastewater sedimentation device according to claim 1, wherein the edge of the bottom wall of the reaction tank (1) is inclined toward the ground, and the bottom of the filter screen (5) is fixedly connected to the non-inclined edge of the bottom wall of the reaction tank (1).
4. The sedimentation device for titanium dioxide wastewater, according to claim 1, wherein the bottoms of the support legs (3) are fixedly connected with non-slip mats (301).
5. The titanium dioxide wastewater sedimentation device according to claim 1, wherein a storage tank (6) is fixedly connected to one side of the top of the reaction tank (1) away from the protective cover (204), a feeding pipe (601) is arranged at the top of the storage tank (6) in a penetrating manner, one end of the feeding pipe (601) away from the storage tank (6) is suspended at the top of the mixing drum (205), a feeding pump (602) is arranged on the feeding pipe (601), and a feeding port is formed in one side of the top of the storage tank (6) away from the feeding pipe (601).
CN202222184413.2U 2022-08-18 2022-08-18 Titanium white powder is subsides device for waste water Active CN217809057U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222184413.2U CN217809057U (en) 2022-08-18 2022-08-18 Titanium white powder is subsides device for waste water

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222184413.2U CN217809057U (en) 2022-08-18 2022-08-18 Titanium white powder is subsides device for waste water

Publications (1)

Publication Number Publication Date
CN217809057U true CN217809057U (en) 2022-11-15

Family

ID=83975989

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222184413.2U Active CN217809057U (en) 2022-08-18 2022-08-18 Titanium white powder is subsides device for waste water

Country Status (1)

Country Link
CN (1) CN217809057U (en)

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